Infrared optical properties of the spin-1/2 quantum magnet
arXiv:cond-mat/0308273 · doi:10.1103/PhysRevB.69.125108
Abstract
We report results on the electrodynamic response of , a low-dimensional spin-1/2 quantum magnet that shows a spin gap formation for T= 67 . The Fano-like shape of a few selected infrared active phonons suggests an interaction between lattice vibrations and a continuum of low frequency (spin) excitations. The temperature dependence of the phonon mode parameters extends over a broad temperature range well above , indicating the presence of an extended fluctuation regime. In the temperature interval between 200 and there is a progressive dimensionality crossover (from two to one), as well as a spectral weight shift from low towards high frequencies. This allows us to identify a characteristic energy scale of about 430 , ascribed to a pseudo spin-gap.